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首页> 外文期刊>Biotechnology Progress >Characterization of Ferroplasma acidiphilum Growing in Pure and Mixed Culture with Leptospirillum ferriphilum
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Characterization of Ferroplasma acidiphilum Growing in Pure and Mixed Culture with Leptospirillum ferriphilum

机译:铁质钩端螺旋体纯净和混合培养的嗜酸亚铁胞浆的特性

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Biomining is defined as biotechnology for metal recovery from minerals, and is promoted by the concerted effort of a consortium of acidophile prokaryotes, comprised of members of the Bacteria and Archaea domains. Ferroplasma acidiphilum and Leptospirillum ferriphilum are the dominant species in extremely acid environments and have great use in bioleaching applications; however, the role of each species in this consortia is still a subject of research. The hypothesis of this work is that F. acidiphilum uses the organic matter secreted by L. ferriphilum for growth, maintaining low levels of organic compounds in the culture medium, preventing their toxic effects on L. ferriphilum. To test this hypothesis, a characterization of Ferroplasma acidiphilum strain BRL-115 was made with the objective of determining its optimal growth conditions. Subsequently, under the optimal conditions, L. ferriphilum and F. acidiphilum were tested growing in each other's supernatant, in order to define if there was exchange of metabolites between the species. With these results, a mixed culture in batch cyclic operation was performed to obtain main specific growth rates, which were used to evaluate a mixed metabolic model previously developed by our group. It was observed that F. acidiphilum, strain BRL-115 is a chemomixotrophic organism, and its growth is maximized with yeast extract at a concentration of 0.04% wt/vol. From the experiments of L. ferriphilum growing on F. acidiphilum supernatant and vice versa, it was observed that in both cases cell growth is favorably affected by the presence of the filtered medium of the other microorganism, proving a synergistic interaction between these species. Specific growth rates were obtained in cyclic batch operation of the mixed culture and were used as input data for a Flux Balance Analysis of the mixed metabolic model, obtaining a reasonable behavior of the metabolic fluxes and the system as a whole, therefore consolidating the model previously developed. (C) 2016 American Institute of Chemical Engineers
机译:生物采矿被定义为用于从矿物中回收金属的生物技术,并且是由包括细菌和古细菌域成员的嗜酸原核生物财团共同努力促进的。嗜酸亚铁和费氏钩端螺旋体是极端酸性环境中的优势种,在生物浸出应用中有很大的用途。但是,每个物种在该财团中的作用仍然是研究的主题。这项工作的假设是,嗜酸乳杆菌利用费氏乳杆菌分泌的有机物促进生长,在培养基中保持低水平的有机化合物,防止其对费氏乳杆菌的毒性作用。为了检验该假设,对嗜酸亚铁菌株BRL-115进行了表征,目的是确定其最佳生长条件。随后,在最佳条件下,测试了费氏乳杆菌和嗜酸乳杆菌在彼此的上清液中生长,以确定物种之间是否存在代谢物交换。根据这些结果,进行了分批循环操作的混合培养,以获得主要的特定生长率,这些生长率用于评估我们小组先前开发的混合代谢模型。观察到嗜酸链球菌菌株BRL-115是化学营养型生物,并且其酵母生长物以0.04%wt / vol的浓度最大化其生长。从在嗜酸乳杆菌上清液上生长的费氏乳杆菌的实验,反之亦然,观察到在两种情况下,其他微生物的过滤介质的存在均有利地影响细胞生长,证明了这些物种之间的协同相互作用。在混合培养物的循环批处理操作中获得了特定的生长速率,并将其用作混合代谢模型的通量平衡分析的输入数据,从而获得了合理的代谢通量和整个系统的行为,因此先前可以对模型进行合并发达。 (C)2016美国化学工程师学会

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